<th id="5nh9l"></th><strike id="5nh9l"></strike><th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th><strike id="5nh9l"></strike>
<progress id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"><noframes id="5nh9l">
<th id="5nh9l"></th> <strike id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span>
<progress id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span><strike id="5nh9l"><noframes id="5nh9l"><strike id="5nh9l"></strike>
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"></span><span id="5nh9l"><video id="5nh9l"></video></span>
<th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th>
<progress id="5nh9l"><noframes id="5nh9l">

AlTiCrN涂層結合界面組織特征與結合性能

Interfacial structural characteristics and bonding performance of AlTiCrN coatings

  • 摘要: 以Ti、Al和Cr為靶材,采用陰極離子鍍在YT14硬質合金刀具表面制備一層AlTiCrN涂層,通過掃描電鏡、能譜儀和X射線衍射儀分析了其表面和界面形貌、化學元素組成和物相,并用線掃描和面掃描研究了涂層中化學元素在結合界面處擴散機理.用劃痕法表征其界面層結合強度,對界面結合機理進行了討論.AlTiCrN涂層的物相主要以AlN、CrN和TiN為主,涂層在(111)晶面具有很強的擇優取向.涂層中Al、Ti、Cr和N原子數分數高于基體,在結合界面處呈階梯狀過渡分布,基體中C原子擴散進入TiN、AlN和CrN晶格點陣中,形成明顯的擴散層.涂層結合界面為機械+擴散形式,其結合方式主要是由吸附結合、擴散結合和化合結合方式組成.劃痕過程中涂層經歷彈性變形、塑性變形和涂層剝離三個階段,界面結合強度為59.2N.

     

    Abstract: A layer of AlTiCrN coating was prepared on the YT14 hard alloy cutter surface by cathodic arc ion plating(CAIP) with Ti,Al and Cr targets. The morphologies,chemical elements and phases of the coating surface and interface were observed by means of scanning electron microscopy(SEM),energy dispersive spectrometer(EDS) and X-ray diffraction(XRD),respectively. The diffusion mechanism of chemical elements at the interface was analyzed by line scan and plane scan. The bonding strength of the interface was characterized by scratch test,and the binding mechanism was discussed. The results show that phases in the coating mainly are composed of AlN,CrN and TiN,and the crystal plane of(111) has a strong preferred orientation. The concentrations of Al,Ti,Cr and N in the coating are higher than those in the substrate,showing a step-like distribution at the interface. C atoms in the substrate diffuse into the TiN,AlN and CrN lattices to form an obvious diffusion layer. The interface is a mechanical and diffusion form,mainly combined with adsorption bonding,diffusion bonding and chemical combination. The coating bears three stages in scratch process,i. e.,elastic deformation,plastic deformation and coating stripping,and the interface bonding strength is 59.2 N.

     

/

返回文章
返回
<th id="5nh9l"></th><strike id="5nh9l"></strike><th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th><strike id="5nh9l"></strike>
<progress id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"><noframes id="5nh9l">
<th id="5nh9l"></th> <strike id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span>
<progress id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span><strike id="5nh9l"><noframes id="5nh9l"><strike id="5nh9l"></strike>
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"></span><span id="5nh9l"><video id="5nh9l"></video></span>
<th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th>
<progress id="5nh9l"><noframes id="5nh9l">
259luxu-164